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首页> 外文期刊>Physical chemistry chemical physics: PCCP >An ab initio molecular dynamics study of thermal decomposition of 3,6-di(azido)-1,2,4,5-tetrazine
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An ab initio molecular dynamics study of thermal decomposition of 3,6-di(azido)-1,2,4,5-tetrazine

机译:3,6-二(叠氮基)-1,2,4,5-四嗪热分解的从头算分子动力学研究

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摘要

Ab initio molecular dynamics simulations were performed to study the thermal decomposition of isolated and crystal 3,6-di(azido)-1,2,4,5-tetrazine (DiAT). During unimolecular decomposition, the three different initiation mechanisms were observed to be N-N2 cleavage, ring opening, and isomerization, respectively. The preferential initial decomposition step is the homolysis of the N-N2 bond in the azido group. The release mechanisms of nitrogen gas are found to be very different in the early and later decomposition stages of crystal DiAT. In the early decomposition, DiAT decomposes very fast and drastically without forming any stable long-chains or heterocyclic clusters, and most of the nitrogen gases are released through rapid rupture of nitrogen-nitrogen and carbon-nitrogen bonds. But in the later decomposition stage, the release of nitrogen gas is inhibited due to low mobility, long distance from each other, and strong carbon-nitrogen bonds. To overcome the obstacles, the nitrogen gases are released through slow formation and disintegration of polycyclic networks. Our simulations suggest a new decomposition mechanism for the organic polyazido initial explosive at the atomistic level.
机译:从头开始进行分子动力学模拟,以研究分离的晶体3,6-di(叠氮基)-1,2,4,5-四嗪(DiAT)的热分解。在单分子分解过程中,观察到三种不同的引发机制分别是N-N2裂解,开环和异构化。优先的初始分解步骤是叠氮基团中N-N2键的均质化。发现在DiAT晶体的早期和晚期分解阶段,氮气的释放机理有很大不同。在早期分解中,DiAT分解非常迅速且急剧,而没有形成任何稳定的长链或杂环簇,并且大多数氮气通过氮-氮和碳-氮键的快速断裂而释放。但在随后的分解阶段,由于迁移率低,彼此之间的距离长以及碳氮键牢固,抑制了氮气的释放。为了克服障碍,通过多环网络的缓慢形成和分解来释放氮气。我们的模拟为原子级有机多叠氮化物初始爆炸物提出了一种新的分解机理。

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